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撒哈拉以南非洲地区中熟耐旱玉米自交系的测交表现及配合力

Testcross performance and combining ability of intermediate maturing drought tolerant maize inbred lines in Sub-Saharan Africa.

作者信息

Manigben Kulai Amadu, Beyene Yoseph, Chaikam Vijay, Tongoona Pangirayi B, Danquah Eric Y, Ifie Beatrice E, Aleri Isaiah, Chavangi Andrew, Prasanna Boddupalli M, Gowda Manje

机构信息

International Maize and Wheat Improvement Center (CIMMYT), World Agroforestry Centre (ICRAF), United Nations Avenue, Nairobi, Kenya.

West Africa Centre for Crop Improvement (WACCI), University of Ghana, Accra, Ghana.

出版信息

Front Plant Sci. 2024 Nov 28;15:1471041. doi: 10.3389/fpls.2024.1471041. eCollection 2024.

Abstract

Drought is a major constraint on maize ( L.) production and productivity in Sub-Saharan Africa (SSA). The increase in frequency and severity of drought, driven by climate change, is expected to worsen in the future. These occurrences are likely to adversely affect maize production and productivity, threatening the economic and social stability of millions of smallholder farmers. Understanding the genetics of hybrid performance under drought stress is crucial for designing breeding strategies to develop high-yielding hybrids. This study aimed to (i) evaluate the performance of three-way cross hybrids developed from elite inbred lines, including several drought-tolerant lines, using a line-by-tester mating design, and (ii) estimate the general combining ability (GCA) and specific combining ability (SCA) effects of the tropical maize inbred lines under managed drought and optimum conditions. A total of 265 maize inbred lines from the CIMMYT global maize breeding program were used as parents and crossed to six single cross testers to generate 795 testcross hybrids. These hybrids, along with six commercial hybrids as a check, were evaluated under managed drought and optimum conditions. Significant ( < 0.001) variations were observed among genotypes and genotypes-by-environment interactions (GEIs) for grain yield and other traits. There was a preponderance of GCA variance (lines and tester) over SCA variance, indicating that additive effects were more important in determining grain yield and other key traits under both managed drought and optimum conditions. Ten inbred lines (S2_8, S10_1, S6_4, S10_14, S2_14, S10_15, S8_7, S2_3, S8_15, and S13_5) with desirable GCA effects for grain yield and other traits were identified. Fourteen testcross hybrids were identified with high grain yield and desirable agronomic traits under both drought and optimum conditions. The identified lines and hybrids are useful sources to be used in breeding and deploying as stress-tolerant hybrids. High correlations observed between observed and GCA-predicted hybrid performance suggest the possibility to evaluate more hybrids with fixed resources. The study demonstrates that it is feasible to obtain high-yielding and drought-tolerant lines and hybrids. These testcross hybrids should undergo rigorous on-farm trials to ensure consistent performance before commercialization and release. Deploying these hybrids could help in mitigating the effects of drought stress in SSA and contribute to improved maize productivity in the region.

摘要

干旱是撒哈拉以南非洲(SSA)玉米(L.)生产和生产力的主要限制因素。在气候变化的推动下,干旱发生的频率和严重程度预计在未来会加剧。这些情况可能会对玉米生产和生产力产生不利影响,威胁到数百万小农户的经济和社会稳定。了解干旱胁迫下杂交种表现的遗传特性对于设计育种策略以培育高产杂交种至关重要。本研究旨在:(i)采用系×测验种交配设计,评估由优良自交系(包括几个耐旱系)培育的三交种的表现;(ii)估计热带玉米自交系在可控干旱和最佳条件下的一般配合力(GCA)和特殊配合力(SCA)效应。来自国际玉米小麦改良中心(CIMMYT)全球玉米育种计划的265个玉米自交系用作亲本,与6个单交测验种杂交,产生795个测交种。这些杂交种,连同6个商业杂交种作为对照,在可控干旱和最佳条件下进行评估。在基因型以及基因型与环境互作(GEIs)之间,观察到籽粒产量和其他性状存在显著(<0.001)差异。GCA方差(系和测验种)占主导地位,超过SCA方差,表明在可控干旱和最佳条件下,加性效应在决定籽粒产量和其他关键性状方面更为重要。鉴定出10个对籽粒产量和其他性状具有理想GCA效应的自交系(S2_8、S10_1、S6_4、S10_14、S2_14、S10_15、S8_7、S2_3、S8_15和S13_5)。鉴定出14个在干旱和最佳条件下均具有高籽粒产量和理想农艺性状的测交种。所鉴定的自交系和杂交种是用于育种和作为耐旱杂交种推广的有用资源。观察到的和GCA预测的杂交种表现之间的高相关性表明,有可能利用固定资源评估更多杂交种。该研究表明,获得高产和耐旱的自交系和杂交种是可行的。这些测交种在商业化和发布之前,应进行严格的田间试验,以确保表现一致。推广这些杂交种有助于减轻SSA地区干旱胁迫的影响,并有助于提高该地区的玉米生产力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/26c4/11638838/eee742810756/fpls-15-1471041-g001.jpg

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